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    • 72. 发明公开
    • Predicting NOx Emissions
    • 预测NOx排放
    • EP2320144A3
    • 2018-01-17
    • EP10189571.2
    • 2010-11-01
    • General Electric Company
    • Headley, Christopher DamienNoel, Brian Stephen
    • F23N5/00
    • F23N5/006F23N2023/10F23N2023/40F23N2027/20F23N2900/05003
    • A method of predicting a nitrogen oxide (NO x ) emission rate of a non-continuous, natural gas-fired boiler (100) is presented. The method includes: calculating a correlation of the NO x emission rate to a measured fuel flow rate and a sampled oxygen (O 2 ) concentration based on a plurality of sampled NO x emission concentrations, measured fuel flow rates, and sampled (O 2 ) concentrations during operation of the non-continuous, natural gas-fired boiler (100) using a computing device (S1); calculating a predicted NO x emission rate based on the correlation with the measured fuel flow rate and the sampled O 2 concentration using the computing device (S2); and providing the predicted NO x emission rate for use by a user (36).
    • 提出了一种预测非连续天然气燃烧锅炉(100)的氮氧化物(NOx)排放率的方法。 该方法包括:基于在操作期间的多个采样的NOx排放浓度,测量的燃料流率和采样的(O2)浓度来计算NOx排放率与测量的燃料流率和采样的氧气(O2)浓度的相关性 使用计算装置(S1)的非连续的天然气燃烧锅炉(100); 使用所述计算装置基于与所述测量的燃料流率和所述采样的O2浓度的相关性计算预测的NOx排放率(S2); 并提供供用户使用的预测的NOx排放率(36)。
    • 80. 发明公开
    • Method and controller for operating a gas burner
    • Verfahren undSteuergerätzum Betrieb eines Gasbrenners
    • EP2685169A1
    • 2014-01-15
    • EP12176356.9
    • 2012-07-13
    • Honeywell Technologies Sarl
    • Blaauwwiekel, PietLangius, Gerwin
    • F23N5/24F23N1/02F23N5/00G05B9/02
    • F23N1/022F23N5/003F23N5/242F23N2025/06F23N2025/19F23N2027/16F23N2900/05003G05D11/132
    • Method for operating a gas burner (10), wherein during burner-on phases a gas/air mixture having a defined mixing ratio of gas and air is provided to a burner chamber (11) of the gas burner (10) for combusting the gas/air mixture within the burner chamber (11), wherein the gas/air mixture is provided by mixing an air flow sucked in by a fan (14) with a gas flow, and wherein the defined mixing ratio of the gas/air mixture is controlled by comparing an actual value of a signal provided by an electrical or electronic sensor (23) coupled to a gas duct (16) with a nominal value for the signal provided by the electrical or electronic sensor (23) and by generating a control variable for a gas valve (17) assigned to the gas duct (16) on basis of the control deviation between the actual value and the nominal value. During burner-on phases the function of the electrical or electronic sensor (23) becomes checked by generating an input variable for an actuator (21) of the gas valve (17), by operating the gas valve (17) on basis of the input variable for the actuator (21) and by comparing an actual output signal provided by the electrical or electronic sensor (23) in response to this operation of the gas valve (17) with a nominal output signal expected in response to this operation of the gas valve (17).
    • 一种用于操作气体燃烧器(10)的方法,其中在燃烧器阶段期间,将具有确定的气体和空气混合比的气体/空气混合物提供给气体燃烧器(10)的燃烧室(11),用于燃烧气体 /空气混合物,其中通过将由风扇(14)吸入的空气流与气流混合而提供气体/空气混合物,并且其中气/空气混合物的限定混合比为 通过将由耦合到气体管道(16)的电气或电子传感器(23)提供的信号的实际值与由电气或电子传感器(23)提供的信号的标称值进行比较并通过生成控制变量来控制 基于实际值和标称值之间的控制偏差,分配给气体管道(16)的气体阀(17)。 在燃烧器开启阶段期间,通过根据输入的方式操作气阀(17),通过产生用于气阀(17)的致动器(21)的输入变量来检查电气或电子传感器(23)的功能。 并且通过将电气或电子传感器(23)提供的实际输出信号作为响应于气体阀(17)的这种操作与响应于该气体的这种操作而预期的标称输出信号进行比较而变化的 阀(17)。